Bowman B T, Sans W W
J Environ Sci Health B. 1980;15(3):233-46. doi: 10.1080/03601238009372178.
Dilute FeCl3 and Fe(NO3)3 solutions degraded parathion to paraoxon and p-nitrophenol. Initial hydrolysis products of iron appeared to have the greatest catalytic activity which decreased as these hydrolysis products aged. The Fe3+ ion was less catalytically active than its hydrolysis products for parathion degradation. pH was not a factor in parathion degradation in this study. AlCl3 solutions did not degrade parathion over a 336 hour period. DDT was stable in dilute FeCl3 and Fe(NO3)3 solutions for at least 56 days.
稀释的氯化铁和硝酸铁溶液将对硫磷降解为对氧磷和对硝基苯酚。铁的初始水解产物似乎具有最大的催化活性,随着这些水解产物的老化,其催化活性降低。对于对硫磷的降解,Fe3+离子的催化活性低于其水解产物。在本研究中,pH不是对硫磷降解的一个因素。在336小时内,氯化铝溶液未降解对硫磷。滴滴涕在稀释的氯化铁和硝酸铁溶液中至少56天保持稳定。